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Embedded System Validation Engineer Jobs in Ohio

As an Embedded Systems Platform Engineer based in Elyria, OH, you'll collaborate with Mechanical ... Lead system design, including architecture design and system requirements development. * Conduct ...

Lead Validation Engineer

Dayton, OH

$99K - $131K/yr

Lead Validation Engineer | Dayton, OH Long-term contract-to-hire role 12+ months | Full-time with ... Direct experience with IMUs, MEMS sensors, or sensor systems in automotive or off-highway equipment.

Embedded Software Engineer III

Dublin, OH · On-site

$127K - $167K/yr

... Systems' products. Responsibilities (Essential Functions): 1. Design, develop, test and maintain ... and validation • Familiarity with industry-standard development procedures and compliance ...

Senior Engineer Embedded Systems

Elyria, OH

$113K - $148K/yr

As a Senior Engineer, Embedded Systems, based in Elyria, OH, you'll collaborate with Mechanical ... Lead system design, including architecture design and system requirements development. * Conduct ...

Senior Engineer Embedded Systems

Elyria, OH · On-site

$113K - $148K/yr

As a Senior Engineer, Embedded Systems, based in Elyria, OH, you'll collaborate with Mechanical ... Lead system design, including architecture design and system requirements development. * Conduct ...

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Embedded System Validation Engineer information

What is the difference between Embedded System Validation Engineer vs Firmware Test Engineer?

AspectEmbedded System Validation EngineerFirmware Test Engineer
CredentialsBachelor's in Electrical, Computer Engineering, or related; certifications like ISTQB are commonBachelor's in Computer Science, Electrical Engineering; similar certifications often used
Work EnvironmentHardware and software testing in embedded systems, often in labs or manufacturingSoftware testing of firmware, mainly in development or testing labs
Industry UsageAutomotive, consumer electronics, industrial automationConsumer electronics, IoT devices, embedded systems
Common Search/ComparisonYesYes

The Embedded System Validation Engineer focuses on validating both hardware and software components of embedded systems, ensuring overall system functionality. In contrast, the Firmware Test Engineer primarily tests the firmware or software running on embedded devices. While both roles require similar technical skills and certifications, their focus areas differ: validation of entire systems versus software-specific testing.

What are Embedded System Validation Engineers?

Embedded System Validation Engineers are professionals responsible for testing and verifying that embedded systems—specialized computing systems within larger devices—function correctly and meet design specifications. They develop and execute validation plans, create test cases, and use debugging tools to identify hardware and software issues. Their work ensures the reliability, safety, and performance of products such as automotive systems, medical devices, and consumer electronics. Collaboration with design and development teams is crucial to address any detected issues before product release.

What are some common challenges faced by Embedded System Validation Engineers during product testing?

Embedded System Validation Engineers often encounter challenges such as debugging complex hardware-software interactions, managing limited access to prototypes, and ensuring thorough test coverage across various hardware configurations. Collaborating closely with firmware developers and hardware designers is essential to identify and resolve issues efficiently. Additionally, staying updated with new validation tools and methodologies can be necessary to address evolving technology and product requirements.

What are the key skills and qualifications needed to thrive as an Embedded System Validation Engineer, and why are they important?

To excel as an Embedded System Validation Engineer, a strong background in embedded systems, electronics, and programming languages like C/C++ is essential, typically supported by a degree in electrical engineering or a related field. Familiarity with validation tools, oscilloscopes, logic analyzers, version control systems, and test automation frameworks is commonly required. Analytical thinking, problem-solving, and effective communication are vital soft skills for diagnosing complex issues and collaborating with cross-functional teams. These abilities ensure comprehensive system validation, high product quality, and successful integration in complex hardware-software environments.
What are popular job titles related to Embedded System Validation Engineer jobs in Ohio? For Embedded System Validation Engineer jobs in Ohio, the most frequently searched job titles are:
What cities in Ohio are hiring for Embedded System Validation Engineer jobs? Cities in Ohio with the most Embedded System Validation Engineer job openings:

$81K - $105K/yr

Other

Posted 21 days ago


Job description

Title: Digital Controls Engineer (Levels II, III, and IV)
Location:
Euclid, OH – minimum 3x per week on site
Type:
FTE, Salaried Exempt
Eligibility:
Available to all US Permanent Residents. Not eligible for current or future sponsorship. No C2C.

Position Summary

We are seeking a Digital Controls Engineer to join our growing R&D organization focused on advanced power electronics applications including welding, plasma cutting, and EV charging systems. This role will be part of a newly formed Digital Controls team responsible for developing, implementing, and validating control algorithms used in high-performance embedded systems.

The ideal candidate has experience developing control loops for power electronics, motor control, or similar real-time systems and enjoys bridging the gap between simulation and physical hardware. This is a highly hands-on engineering role involving modeling, laboratory testing, debugging, and cross-functional collaboration with firmware, hardware, and power electronics teams.

Basic Requirements

  • Bachelor's degree in Electrical Engineering, Controls Engineering, Computer Engineering, or related technical field.
  • 2+ years (Engineer II) or 5+ years (Engineer III or IV) of experience developing control systems for power electronics, motor drives, automotive systems, industrial equipment, or similar applications.
  • Experience with control theory and closed-loop control systems.
  • Experience using MATLAB/Simulink or similar modeling and simulation tools.
  • Hands-on laboratory experience debugging and validating hardware systems.
  • Strong analytical and problem-solving skills.

Preferred Qualifications

  • Experience with power electronics, motor control, welding systems, automotive controls, or EV-related technologies.
  • Familiarity with digital signal processors (DSPs) or FPGA-based control systems.
  • Exposure to embedded software or firmware development in C/C++.
  • Experience working with analog-to-digital converters (ADCs), real-time control systems, and signal conditioning.
  • Understanding of model-based design methodologies.

Controls Development and Implementation

  • Design, develop, and optimize control algorithms for power electronics and real-time embedded systems.
  • Develop and tune control loops, compensators, filters, and related control strategies.
  • Utilize modeling and simulation tools, such as MATLAB/Simulink, to evaluate and refine system performance.
  • Support implementation of control algorithms on embedded processors and digital control platforms.

System Validation and Debugging

  • Perform hands-on laboratory testing and validation of control systems on prototype and production hardware.
  • Investigate discrepancies between simulation results and real-world system behavior.
  • Analyze test data to identify root causes of performance issues and drive corrective actions.
  • Utilize oscilloscopes, power analyzers, logic analyzers, and other lab equipment to troubleshoot complex system interactions.

Cross-Functional Engineering Support

  • Collaborate with firmware, hardware, power electronics, and systems engineering teams to ensure successful implementation of control solutions.
  • Participate in architecture discussions, design reviews, and technical problem-solving activities.
  • Contribute to system-level performance improvements through data-driven analysis and experimentation.

Documentation and Technical Communication

  • Document control system designs, simulation results, testing activities, and engineering findings.
  • Communicate technical concepts and recommendations effectively across engineering disciplines.